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android/guava/src/com/google/common/hash/BloomFilter.java
* @param m total number of bits in Bloom filter (must be positive) */ @VisibleForTesting static int optimalNumOfHashFunctions(long n, long m) { // (m / n) * log(2), but avoid truncation due to division! return max(1, (int) Math.round((double) m / n * Math.log(2))); } /** * Computes m (total bits of Bloom filter) which is expected to achieve, for the specified
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Wed Oct 23 16:45:30 UTC 2024 - 26.6K bytes - Viewed (0) -
android/guava/src/com/google/common/base/Converter.java
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Thu Feb 15 16:12:13 UTC 2024 - 23K bytes - Viewed (0) -
doc/asm.html
Thus <code>-2</code> is not the integer value minus two, but the unsigned 64-bit integer with the same bit pattern. The distinction rarely matters but to avoid ambiguity, division or right shift where the right operand's high bit is set is rejected. </p> <h3 id="symbols">Symbols</h3> <p> Some symbols, such as <code>R1</code> or <code>LR</code>,
Registered: Tue Nov 05 11:13:11 UTC 2024 - Last Modified: Tue Nov 28 19:15:27 UTC 2023 - 36.3K bytes - Viewed (0) -
LICENSE
(an example is provided in the Appendix below). "Derivative Works" shall mean any work, whether in Source or Object form, that is based on (or derived from) the Work and for which the editorial revisions, annotations, elaborations, or other modifications represent, as a whole, an original work of authorship. For the purposes of this License, Derivative Works shall not include works that remain
Registered: Wed Nov 06 11:36:14 UTC 2024 - Last Modified: Tue Jan 23 11:07:23 UTC 2024 - 23.1K bytes - Viewed (0) -
CHANGELOG/CHANGELOG-1.11.md
* Authorization sets `authorization.k8s.io/decision` and `authorization.k8s.io/reason` annotations with the authorization decision ("allow" or "forbid") and a human-readable description of why the decision was made (for example, RBAC includes the name of the role/binding/subject which allowed a request).
Registered: Fri Nov 01 09:05:11 UTC 2024 - Last Modified: Thu Feb 06 06:04:15 UTC 2020 - 328.4K bytes - Viewed (0) -
LICENSE
write to the author to ask for permission. For software which is copyrighted by the Free Software Foundation, write to the Free Software Foundation; we sometimes make exceptions for this. Our decision will be guided by the two goals of preserving the free status of all derivatives of our free software and of promoting the sharing and reuse of software generally. NO WARRANTY
Registered: Sun Nov 03 00:10:13 UTC 2024 - Last Modified: Mon Jan 18 20:25:38 UTC 2016 - 25.8K bytes - Viewed (0) -
doc/go1.17_spec.html
const c = 15 / 4.0 // c == 3.75 (untyped floating-point constant) const Θ float64 = 3/2 // Θ == 1.0 (type float64, 3/2 is integer division) const Π float64 = 3/2. // Π == 1.5 (type float64, 3/2. is float division) const d = 1 << 3.0 // d == 8 (untyped integer constant) const e = 1.0 << 3 // e == 8 (untyped integer constant)
Registered: Tue Nov 05 11:13:11 UTC 2024 - Last Modified: Thu Oct 10 18:25:45 UTC 2024 - 211.6K bytes - Viewed (0) -
docs/en/docs/async.md
--- Common examples of CPU bound operations are things that require complex math processing. For example: * **Audio** or **image processing**. * **Computer vision**: an image is composed of millions of pixels, each pixel has 3 values / colors, processing that normally requires computing something on those pixels, all at the same time.
Registered: Sun Nov 03 07:19:11 UTC 2024 - Last Modified: Wed Aug 28 23:33:37 UTC 2024 - 23.5K bytes - Viewed (0) -
docs/fr/docs/async.md
--- Des exemples communs d'opérations "CPU bounds" sont les procédés qui requièrent des traitements mathématiques complexes. Par exemple : * Traitements d'**audio** et d'**images**. * La **vision par ordinateur** : une image est composée de millions de pixels, chaque pixel ayant 3 valeurs / couleurs, les traiter tous va nécessiter d'effectuer des traitements sur chaque pixel, et de préférence tous en même temps.
Registered: Sun Nov 03 07:19:11 UTC 2024 - Last Modified: Tue Aug 06 04:48:30 UTC 2024 - 25.4K bytes - Viewed (0) -
docs/es/docs/async.md
--- Ejemplos típicos de operaciones dependientes de CPU son cosas que requieren un procesamiento matemático complejo. Por ejemplo: * **Audio** o **procesamiento de imágenes**. * **Visión por computadora**: una imagen está compuesta de millones de píxeles, cada píxel tiene 3 valores / colores, procesamiento que normalmente requiere calcular algo en esos píxeles, todo al mismo tiempo.
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